Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.

Hemorrhagic meningitis is a fatal complication of anthrax, but its pathogenesis remains poorly understood. The present study examined the role of B. anthracis-secreted metalloprotease InhA on monolayer integrity and permeability of human brain microvasculature endothelial cells (HBMECs) which consti...

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Main Authors: Dhritiman V Mukherjee, Jessica H Tonry, Kwang Sik Kim, Nalini Ramarao, Taissia G Popova, Charles Bailey, Serguei Popov, Myung-Chul Chung
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3060093?pdf=render
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spelling doaj-f06923c9ce984243a84a924b53c418182020-11-25T02:10:40ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0163e1792110.1371/journal.pone.0017921Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.Dhritiman V MukherjeeJessica H TonryKwang Sik KimNalini RamaraoTaissia G PopovaCharles BaileySerguei PopovMyung-Chul ChungHemorrhagic meningitis is a fatal complication of anthrax, but its pathogenesis remains poorly understood. The present study examined the role of B. anthracis-secreted metalloprotease InhA on monolayer integrity and permeability of human brain microvasculature endothelial cells (HBMECs) which constitute the blood-brain barrier (BBB). Treatment of HBMECs with purified InhA resulted in a time-dependent decrease in trans-endothelial electrical resistance (TEER) accompanied by zonula occluden-1 (ZO-1) degradation. An InhA-expressing B. subtilis exhibited increased permeability of HBMECs, which did not occur with the isogenic inhA deletion mutant (ΔinhA) of B. anthracis, compared with the corresponding wild-type strain. Mice intravenously administered with purified InhA or nanoparticles-conjugated to InhA demonstrated a time-dependent Evans Blue dye extravasation, leptomeningeal thickening, leukocyte infiltration, and brain parenchymal distribution of InhA indicating BBB leakage and cerebral hemorrhage. Mice challenged with vegetative bacteria of the ΔinhA strain of B. anthracis exhibited a significant decrease in leptomeningeal thickening compared to the wildtype strain. Cumulatively, these findings indicate that InhA contributes to BBB disruption associated with anthrax meningitis through proteolytic attack on the endothelial tight junctional protein zonula occluden (ZO)-1.http://europepmc.org/articles/PMC3060093?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Dhritiman V Mukherjee
Jessica H Tonry
Kwang Sik Kim
Nalini Ramarao
Taissia G Popova
Charles Bailey
Serguei Popov
Myung-Chul Chung
spellingShingle Dhritiman V Mukherjee
Jessica H Tonry
Kwang Sik Kim
Nalini Ramarao
Taissia G Popova
Charles Bailey
Serguei Popov
Myung-Chul Chung
Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.
PLoS ONE
author_facet Dhritiman V Mukherjee
Jessica H Tonry
Kwang Sik Kim
Nalini Ramarao
Taissia G Popova
Charles Bailey
Serguei Popov
Myung-Chul Chung
author_sort Dhritiman V Mukherjee
title Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.
title_short Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.
title_full Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.
title_fullStr Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.
title_full_unstemmed Bacillus anthracis protease InhA increases blood-brain barrier permeability and contributes to cerebral hemorrhages.
title_sort bacillus anthracis protease inha increases blood-brain barrier permeability and contributes to cerebral hemorrhages.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Hemorrhagic meningitis is a fatal complication of anthrax, but its pathogenesis remains poorly understood. The present study examined the role of B. anthracis-secreted metalloprotease InhA on monolayer integrity and permeability of human brain microvasculature endothelial cells (HBMECs) which constitute the blood-brain barrier (BBB). Treatment of HBMECs with purified InhA resulted in a time-dependent decrease in trans-endothelial electrical resistance (TEER) accompanied by zonula occluden-1 (ZO-1) degradation. An InhA-expressing B. subtilis exhibited increased permeability of HBMECs, which did not occur with the isogenic inhA deletion mutant (ΔinhA) of B. anthracis, compared with the corresponding wild-type strain. Mice intravenously administered with purified InhA or nanoparticles-conjugated to InhA demonstrated a time-dependent Evans Blue dye extravasation, leptomeningeal thickening, leukocyte infiltration, and brain parenchymal distribution of InhA indicating BBB leakage and cerebral hemorrhage. Mice challenged with vegetative bacteria of the ΔinhA strain of B. anthracis exhibited a significant decrease in leptomeningeal thickening compared to the wildtype strain. Cumulatively, these findings indicate that InhA contributes to BBB disruption associated with anthrax meningitis through proteolytic attack on the endothelial tight junctional protein zonula occluden (ZO)-1.
url http://europepmc.org/articles/PMC3060093?pdf=render
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